Key Technical Specifications
The “U6” designation signifies a specific configuration in the EDU lineup, emphasizing maximum mobility and sensory feedback.
| Feature | Specification |
| Degrees of Freedom (DoF) | Up to 43 DoF (including a 3-DoF waist for human-like flexibility) |
| Computing Power | 100 TOPS via NVIDIA Jetson Orin NX (AI-native processing) |
| End Effectors | Dual Inspire 5-finger tactile hands (pressure-sensitive) |
| Max Speed / Torque | 2.0 m/s Top Speed | 120 N·m Peak Knee Torque |
| Sensing Suite | 3D LiDAR (Livox Mid-360), Depth Camera (Intel RealSense), IMU |
| Battery Life | ~2 Hours (9000mAh quick-release lithium battery) |
| Software Support | Full SDK, ROS/ROS2, Python, and C++ for secondary development |
Why the “Ultimate D” Stands Out
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Human-Level Dexterity: Unlike the standard models that use basic grippers, the U6 features 5-finger hands equipped with multiple tactile sensors. This allows the robot to handle fragile objects—like an egg—or use complex tools with high precision.
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3-DOF Waist Mastery: Most humanoid robots have a rigid or single-axis waist. The Ultimate D’s 3-degree-of-freedom waist allows it to rotate, lean, and stabilize its center of gravity, which is critical for complex tasks like climbing stairs or carrying uneven loads.
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Advanced AI Learning: Built to support Reinforcement Learning and Imitation Learning, the onboard 100 TOPS module allows the robot to process environmental data locally, enabling it to learn new tasks through physical demonstration or simulation.
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Industrial-Grade Durability: Constructed with high-strength alloys and industrial-grade crossed roller bearings, it is designed to withstand the rigors of intense laboratory testing and outdoor locomotion.
Application Areas
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Academic Research: Studying bipedal balance, biomechanics, and Human-Robot Interaction (HRI).
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Healthcare: Prototyping assistants for patient care or surgical equipment handling.
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Hazardous Environments: Remote reconnaissance and object manipulation in areas unsafe for humans.










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